Satellite-Based Monitoring of Ecosystem Level Drought Using Vegetation Optical Depth and Sun-Induced Chlorophyll Fluorescence
Author:
Affiliation:
1. Earth and Life Institute, Univcrsité catholique de Louvain,Louvain-la-Neuve,Belgium,1348
2. Earth Observation and Ecosystem Modelling Laboratory, SPHERES Research Unit, Université de Liège (ULiège),Liège,Belgium,4000
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/9883023/9883024/09883457.pdf?arnumber=9883457
Reference8 articles.
1. Value of sun-induced chlorophyll fluorescence for quantifying hydrological states and fluxes: Current status and challenges
2. ERA5 hourly data on single levels from 1979 to present;hersbach;Copernicus Climate Change Service Climate Data Store (CDS),2022
3. Global variations in ecosystem‐scale isohydricity
4. Global Retrievals of Solar‐Induced Chlorophyll Fluorescence With TROPOMI: First Results and Intersensor Comparison to OCO‐2
5. Structural and photosynthetic dynamics mediate the response of SIF to water stress in a potato crop
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1. Assessing the responsiveness of multiple microwave remote sensing vegetation optical depth indices to drought on crops in Midwest US;International Journal of Applied Earth Observation and Geoinformation;2024-08
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